0
Article Tier 2 Environmental Sources Sign in to save

Microplastics Altered Microbial Resource Limitation and C/N Use Efficiency in Cotton Rhizosphere Soil

No summary available — this paper's abstract is not included in the open metadata provided by the publisher. Learn why →

More Papers Like This

Article Tier 2

Microplastic Alters Rhizosphere Microbiome: A Review

AI summary Read the abstract

Researchers review how microplastic accumulation in soil disrupts the rhizosphere microbiome — the community of beneficial microorganisms surrounding plant roots — impairing nutrient uptake and pathogen resistance in ways that could threaten agricultural productivity and soil ecosystem health.

Article Tier 2

Microplastics Change Soil Nutrient Availability, Microbial Properties, and Ecosystem Multifunctionality of a Red Soil

AI summary Read the abstract

A two-month incubation experiment found that polyethylene and PVC microplastics disrupt soil nutrient availability, microbial communities, and overall ecosystem function in red soil, with effects varying by plastic type, size, and dose. Soil microplastic contamination threatens agricultural productivity by undermining the microbial processes that keep soils fertile.

Article Tier 2

Impact of Microplastic Accumulation on Rhizosphere Activities in Soil

AI summary Read the abstract

Researchers examine how microplastic accumulation in soil alters rhizosphere dynamics, finding that plastic particles disrupt microbial communities and enzyme activities in the root zone, with downstream effects on nutrient cycling and overall soil health.

Article Tier 2

Microplastics disrupt the nitrogen-fixing bacterial community with consequences for plant growth

AI summary Read the abstract

Tiny plastic fibers in soil can mess with the helpful bacteria that plants rely on to pull nitrogen from the air, a process crucial for healthy growth, but the effects depend on the type of plastic, with some helping and others hurting root growth or the bacterial partnerships plants need. This matters because as plastic pollution builds up in farmland, it could quietly disrupt the natural systems that keep our food crops fed and healthy, even before we fully understand the ripple effects on the food we eat.

Article Tier 2

Microplastics in soil-plant system: effects of nano/microplastics on plant photosynthesis, rhizosphere microbes and soil properties in soil with different residues

AI summary Read the abstract

Polystyrene micro- and nanoplastics altered soil dissolved organic matter, disrupted rhizosphere microbial communities, and affected plant photosynthesis in Chinese cabbage, with effects varying by plastic particle size and soil amendment type. These findings reveal that microplastic contamination can cascade through soil microbiomes to impair crop growth, raising concerns for agricultural productivity and food system safety.

Research digests by email

When a large batch of papers lands in the Atlas, we read through it and send a short write-up of what stood out.

Email me about

Share this paper